Extrachromosomal circular DNA–mediated spread of herbicide resistance in interspecific hybrids of pigweed

Author:

Koo Dal-Hoe1ORCID,Sathishraj Rajendran1ORCID,Nakka Sridevi2,Ju Yoonha1ORCID,Nandula Vijay K34ORCID,Jugulam Mithila5ORCID,Friebe Bernd1ORCID,Gill Bikram S1ORCID

Affiliation:

1. Wheat Genetics Resource Center and Department of Plant Pathology, Kansas State University , Manhattan, KS 66506 , USA

2. Heartland Plant Innovations Inc. , Manhattan, KS 66506 , USA

3. National Institute of Food and Agriculture, USDA , Kansas City, MO 64105 , USA

4. Crop Production Systems Research Unit, USDA-ARS , Stoneville, MS 38776 , USA

5. Department of Agronomy, Kansas State University , Manhattan, KS 66506 , USA

Abstract

Abstract Extrachromosomal circular DNAs (eccDNAs) are found in many eukaryotic organisms. EccDNA-powered copy number variation plays diverse roles, from oncogenesis in humans to herbicide resistance in crop weeds. Here, we report interspecific eccDNA flow and its dynamic behavior in soma cells of natural populations and F1 hybrids of Amaranthus sp. The glyphosate-resistance (GR) trait is controlled by eccDNA-based amplification harboring the 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) gene (eccDNA replicon), the molecular target of glyphosate. We documented pollen-mediated transfer of eccDNA in experimental hybrids between glyphosate-susceptible Amaranthus tuberculatus and GR Amaranthus palmeri. Experimental hybridization and fluorescence in situ hybridization (FISH) analysis revealed that the eccDNA replicon in Amaranthus spinosus derived from GR A. palmeri by natural hybridization. FISH analysis also revealed random chromosome anchoring and massive eccDNA replicon copy number variation in soma cells of weedy hybrids. The results suggest that eccDNAs are inheritable across compatible species, contributing to genome plasticity and rapid adaptive evolution.

Funder

Kansas Wheat Commission

Kansas Crop Improvement Association

Wheat Genetics Resource Center Industry/University Cooperative Research Center National Science Foundation Contract

Kansas Agricultural Experiment Station

Kansas State University

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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